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首页> 外文期刊>SN Applied Sciences >Effect of process conditions on generation of hydrochloric acid and lithium hydroxide from simulated lithium chloride solution using bipolar membrane electrodialysis
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Effect of process conditions on generation of hydrochloric acid and lithium hydroxide from simulated lithium chloride solution using bipolar membrane electrodialysis

机译:使用双极膜电渗析从模拟锂氯化锂溶液产生盐酸和氢氧化锂生成的影响

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摘要

A feasibility study was carried out on generation of hydrochloric acid and lithium hydroxide from the simulated lithium chloride solution using EX3B model bipolar membrane electrodialysis (BMED). The influence of a series of process parameters, such as feed concentration, initial acid and base concentration in device component, feed solution volume, and current density were investigated. In addition, the maximum achievable concentrations of HCl and LiOH, the average current efficiency, and specific energy consumption were also studied and compared in this paper to the existing literature. Higher LiCl concentrations in the feed solution were found to be beneficial in increasing the final concentrations of HCl and LiOH, as well as improving current efficiency while decreasing specific energy consumption. However, when its concentration was less than 4 g/L, the membrane stack voltage curve of BMED increased rapidly, attributed to the higher solution resistance. Also low initial concentration of acid and base employed in device component can improve the current efficiency. Increasing of the initial concentration of acid and base solution lowered energy consumption. Moreover, a high current density could rapidly increase HCl and LiOH concentration and enhance water movements of BMED process, but reduced the current efficiency. The maximum achievable concentration of HCl and LiOH generated from 130 g/L LiCl solution were close to 3.24 mol/L and 3.57 mol/L, respectively. In summary, the present study confirmed the feasible application for the generation of HCl and LiOH from simulated lithium chloride solution with BMED.
机译:使用EX3B模型双极膜电渗析(BMED)从模拟锂氯化锂溶液产生盐酸和氢氧化锂的产生可行性研究。研究了一系列工艺参数的影响,例如饲料浓度,初始酸和碱浓度,进料溶液体积和电流密度。此外,还研究了本文对现有文献的最大可实现的HCl和LiOH,平均电流效率和特定能量消耗。发现饲料溶液中的LICL浓度较高,在增加HCl和LiOH的最终浓度以及提高电流效率的同时降低特定能耗的同时有益。然而,当其浓度小于4g / L时,BMED的膜堆叠电压曲线迅速增加,归因于较高的溶液电阻。在器件组件中使用的酸和基础的低初始浓度也可以提高电流效率。增加酸和基础溶液的初始浓度降低了能量消耗。此外,高电流密度可以迅速增加HCl和LiOH浓度并增强BMED过程的水运动,但降低了电流效率。从130g / l licl溶液产生的HCl和LiOH的最大可实现浓度分别接近3.24mol / L和3.57mol / L.总之,本研究证实了从模拟氯化锂溶液用BMED产生HCl和LiOH的可行应用。

著录项

  • 来源
    《SN Applied Sciences》 |2022年第2期|47.1-47.11|共11页
  • 作者单位

    Tianqi Lithium Shehong Co Ltd Shehong 629200 Sichuan Peoples R China;

    Tianqi Lithium Shehong Co Ltd Shehong 629200 Sichuan Peoples R China;

    Tianqi Lithium Shehong Co Ltd Shehong 629200 Sichuan Peoples R China|Tianqi Lithium Jiangsu Co Ltd Zhangjiagang 215000 Jiangsu Peoples R China|Tianqi Lithium Sichuan Co Ltd Lithium Resources & Lithium Mat Key Lab Sichuan P Shehong 629200 Peoples R China|Tianqi Lithium Genesis Technol Shenzhen Co Ltd Shenzhen 518066 Guangdong Peoples R China;

    Tianqi Lithium Shehong Co Ltd Shehong 629200 Sichuan Peoples R China;

    Tianqi Lithium Jiangsu Co Ltd Zhangjiagang 215000 Jiangsu Peoples R China;

    Tianqi Lithium Shehong Co Ltd Shehong 629200 Sichuan Peoples R China;

    Tianqi Lithium Shehong Co Ltd Shehong 629200 Sichuan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lithium chloride; Bipolar membrane electrodialysis; Lithium hydroxide; Water movement; Average current efficiency; Specific energy consumption;

    机译:氯化锂;双极膜电渗析;氢氧化锂;水运动;平均电流效率;特定能耗;

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